Pneumatic insole
09839260 · 2017-12-12
Inventors
Cpc classification
A43B13/206
HUMAN NECESSITIES
International classification
Abstract
A pneumatic insole includes airbags, channels, two arch-related chambers, a push-type inlet valve, an inlet channel, a check valve, a recessed portion, a push-type adjustment valve, and an outlet channel. The channels interconnect the airbags. The push-type inlet valve is located in the first arch-related chamber. The inlet channel connects the first arch-related chamber to a leading one of the airbags. The check valve is arranged between the inlet channel and the inlet airbag. The recessed portion is located between the arch-related chambers. The push-type adjustment valve is located in the recessed portion and formed with an upper face that extends lower than that of the first and second arch-related chambers. The outlet channel connects the push-type adjustment valve to another one of the airbags.
Claims
1. A pneumatic insole comprising: at least one inlet airbag (111), at least one outlet airbag (112) and at least one heel-related airbag (113); channels (12) for interconnecting the airbags (111, 112, 113); a first arch-related chamber (14); a second arch-related chamber (15); a push-type inlet valve (30) located in the first arch-related chamber (14); an inlet channel (141) for connecting the first arch-related chamber (14) to the inlet airbag (111); a check valve (31) arranged between the inlet channel (141) and the inlet airbag (111); a recessed portion (116) between the first and second arch-related chambers (14, 15); a push-type adjustment valve (35) located in the recessed portion (116) and formed with an upper face that extends lower than that of the first and second arch-related chambers (14, 15); and an outlet channel (36) for connecting the push-type adjustment valve (35) to the outlet airbag (112).
2. The pneumatic insole according to claim 1, further comprises two support units (40) each inserted in a corresponding one of the first and second arch-related chambers (14, 15).
3. The pneumatic insole according to claim 2, wherein each of the support units (40) comprises a pad (41) and an elastic block (42) located on the pad (41), wherein the elastic block (42) is made with better elasticity than the pad (41).
4. The pneumatic insole according to claim 1, further comprising elastic blocks (43) inserted in some of the airbags (113) that are located in a heel-related portion of the pneumatic insole.
5. The pneumatic insole according to claim 4, wherein each of the elastic blocks (42) is provided with a color.
6. The pneumatic insole according to claim 1, wherein the push-type adjustment valve (35) is made with an upper face (S1) that extends higher than that of the push-button (351).
7. The pneumatic insole according to claim 1, further comprising a connective airbag (17) for interconnecting the first and second arch-related chambers (14, 15).
8. A pneumatic insole comprising an upper layer (10) and a lower layer (20) attached to the upper layer (10) in an air-tight manner so that the pneumatic insole comprises: at least one inlet airbag (111), at least one outlet airbag (112) and at least one heel-related airbag (113); channels (12) for interconnecting the airbags (111, 112, 113); a first arch-related chamber (14); a second arch-related chamber (15); a push-type inlet valve (30) located in the first arch-related chamber (14); an inlet channel (141) for connecting the first arch-related chamber (14) to the inlet airbag (111); a check valve (31) arranged between the inlet channel (141) and the inlet airbag (111); a recessed portion (116) between the first and second arch-related chambers (14, 15); a push-type adjustment valve (35) located in the recessed portion (116) and formed with an upper face that extends lower than that of the first and second arch-related chambers (14, 15); and an outlet channel (36) for connecting the push-type adjustment valve (35) to the outlet airbag (112).
9. The pneumatic insole according to claim 1, wherein each of the upper and lower layers (10, 20) comprises a margin (13, 23) that can be cut to fit a shoe in which the pneumatic insole is to be used.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The present invention will be described via detailed illustration of two embodiments referring to the drawings wherein:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
DETAILED DESCRIPTION OF EMBODIMENTS
(9) Referring to
(10) The pneumatic insole includes two arch-related chambers 14 and 15 in an arch-related portion. The arch-related chamber 14 includes a push-type inlet valve 30. The arch-related chamber 14 is in communication with one of the airbags 11 (further referred to by “the leading airbag 111” for convenience of the description) via an inlet channel 141. A check valve 31 is inserted in the inlet airbag 111. However, the check valve 31 can be inserted in the inlet channel 141 or arranged between the inlet airbag 111 and the inlet channel 141.
(11) Referring to
(12) The upper layer 10 includes a recessed portion 16 between the arch-related chamber 14 and the arch-related chamber 15. The upper layer 10 includes, in the recessed portion 16, a push-type adjustment valve 35 and an outlet channel 36. The outlet channel 36 is in communication with the push-type adjustment valve 35 at an end and in communication with another one of the airbags 11 (further referred to by “the outlet airbag 112” for convenience of the description) at another end.
(13) Referring to
(14) Referring to
(15) Referring to
(16) Before the pneumatic insole is used, all of the airbags 11, which includes the airbags 111, 112 and 113, must be inflated. The arch-related chamber 14 is pressed to actuate the push-type inlet valve 30 to pump air into the airbag 111 from the exterior via the arch-related chamber 14, inlet channel 141 and the check valve 31. Since all of the airbags 11 are interconnected by the channels 12, the air travels into the other airbags 11 from the airbag 111 via the channels 12. The pressing of the arch-related chamber 14 is continued so that all of the airbags 11 are inflated to an extent desired by a user. If the airbags 11 are somehow excessively inflated, the push-type adjustment valve 35 can be pressed to cause some of the air to travel into the outlet airbag 112 from the other airbags 11 via the channels 12 and then travels to the exterior from the outlet airbag 112 via the outlet channel 36 and the push-type adjustment valve 35. The pressing of the push-type adjustment valve 35 is repeated to release an excessive portion of the air to the exterior.
(17) Referring to
(18) The present invention has been described via the detailed illustration of the embodiments. Those skilled in the art can derive variations from the embodiments without departing from the scope of the present invention. Therefore, the embodiments shall not limit the scope of the present invention defined in the claims.